CN215773292U - Remote monitoring device for production line - Google Patents
Remote monitoring device for production line Download PDFInfo
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- CN215773292U CN215773292U CN202122057037.6U CN202122057037U CN215773292U CN 215773292 U CN215773292 U CN 215773292U CN 202122057037 U CN202122057037 U CN 202122057037U CN 215773292 U CN215773292 U CN 215773292U
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Abstract
The utility model discloses a production line remote monitoring device which comprises an installation base, wherein an equipment support is fixedly installed on the installation base, a camera main body is fixedly installed at the tail end of the equipment support, a glass cover is installed on the camera main body, driving mechanisms are fixedly installed on two sides of the camera main body, each driving mechanism comprises a servo push rod, a fixed base, a driving shaft, a bearing seat and a servo motor, a wiping mechanism is fixedly installed at the tail end of each driving mechanism, each wiping mechanism comprises a wiping sponge, a dust collection cover, a driving motor, a positioning clamping sleeve and a positioning base, the fixed bases are fixedly installed on two sides of the camera main body, the servo push rods are fixedly installed on the fixed bases, the bearing seats are fixedly installed at the tail ends of the servo push rods, and the driving shafts are movably installed in the bearing seats. The utility model discloses a remote monitoring device for a production line, belongs to the field of monitoring equipment, and can be used for cleaning dust in front of the monitoring equipment and ensuring the imaging quality.
Description
Technical Field
The utility model relates to the field of monitoring equipment, in particular to a remote monitoring device for a production line.
Background
Remote monitoring can be divided into two parts of monitoring and controlling literally, wherein the monitoring, namely remote monitoring, can be divided into two parts: firstly, monitoring the environment, secondly, monitoring the computer system and the network equipment, no matter how, remote monitoring means obtaining information through the network: the term "control" refers to remote control, and refers to a method for operating a remote computer through a network, and includes not only the operations of restarting or shutting down the remote computer, but also the daily setting of the remote computer. The remote starting function can be realized through the matching of hardware. In summary, to fully control a remote computer, it should be able to monitor the computer, i.e. see the screen display of the computer, and then talk about "control", the remote control must be combined with "monitor" and "control", so that the remote monitor is generally referred to as such remote control. In addition, for a network administrator, remote control also includes control over network devices, most of network devices support Telnet nowadays, and even remotely manage the network devices in a Web manner, which is a method for remote control. The remote monitoring is generally realized by a camera, however, dust is easily accumulated on the camera in the using process, and the accumulated dust can influence the imaging effect.
SUMMERY OF THE UTILITY MODEL
The utility model mainly aims to provide a production line remote monitoring device which can effectively solve the problems in the background technology.
In order to achieve the purpose, the utility model adopts the technical scheme that:
the utility model provides a production line remote monitoring device, includes the installation base, fixed mounting has the equipment stand on the installation base, the terminal fixed mounting of equipment stand has the camera main part, install the glass cover in the camera main part, camera main part both sides fixed mounting has actuating mechanism, actuating mechanism includes servo push rod, unable adjustment base, drive shaft, bearing frame and servo motor, the terminal fixed mounting of actuating mechanism has cleaning mechanism, cleaning mechanism is including cleaning sponge, dust hood, driving motor, location cutting ferrule and location base.
Preferably, unable adjustment base fixed mounting is in camera main part both sides, the last fixed mounting of unable adjustment base has servo push rod, servo push rod end fixed mounting has the bearing frame, movable mounting has the drive shaft in the bearing frame, the one end of drive shaft is connected with servo motor.
Preferably, the servo push rod is installed in camera main part both sides through unable adjustment base, the last through-hole of having seted up of unable adjustment base, servo push rod passes through the through-hole and installs on unable adjustment base, be equipped with the bearing in the bearing frame, the drive shaft passes through bearing movable mounting on the bearing frame.
Preferably, the positioning clamping sleeve is fixedly installed in the middle of the driving shaft, positioning bases are arranged on two sides of the positioning clamping sleeve, a driving motor is fixedly installed in the positioning clamping sleeve, a dust collection cover is fixedly installed at the output end of the driving motor, and a wiping sponge is fixedly installed in the dust collection cover.
Preferably, the positioning clamping sleeve is connected to the driving shaft through the positioning base, the driving motor is installed in the middle of the driving shaft through the positioning clamping sleeve, the dust collection cover is movably installed below the glass cover through the driving motor, and the cleaning sponge is fixed in the dust collection cover through glue.
Preferably, the installation base is connected to the camera main body through an equipment support, and the wiping mechanism is arranged below the glass cover through a driving mechanism.
Compared with the prior art, the utility model has the following beneficial effects:
according to the utility model, the dust collection cover moves upwards after the servo push rod is started, the wiping sponge is attached to the glass cover after the dust collection cover moves upwards, the driving motor can be started after the wiping sponge is attached to the glass cover, and the wiping sponge is attached to the glass cover to rotate after the driving motor is started, so that dust at the lens is cleaned.
Drawings
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic view of the drive mechanism of the present invention;
FIG. 3 is a schematic view of the wiping mechanism of the present invention.
In the figure: 1. installing a base; 2. an equipment support; 3. a camera body; 4. a glass cover; 5. a drive mechanism; 501. a servo push rod; 502. a fixed base; 503. a drive shaft; 504. a bearing seat; 505. a servo motor; 6. a wiping mechanism; 601. wiping sponge; 602. a dust collection cover; 603. a drive motor; 604. positioning the clamping sleeve; 605. and (5) positioning the base.
Detailed Description
In order to make the technical means, the creation characteristics, the achievement purposes and the effects of the utility model easy to understand, the utility model is further described with the specific embodiments.
As shown in fig. 1-3, a production line remote monitoring device, including installation base 1, fixed mounting has equipment support 2 on the installation base 1, the terminal fixed mounting of equipment support 2 has camera main part 3, install glass cover 4 on the camera main part 3, camera main part 3 both sides fixed mounting has actuating mechanism 5, actuating mechanism 5 includes servo push rod 501, unable adjustment base 502, drive shaft 503, bearing frame 504 and servo motor 505, the terminal fixed mounting of actuating mechanism 5 has wiping mechanism 6, wiping mechanism 6 includes wipes sponge 601, dust hood 602, driving motor 603, location cutting ferrule 604 and location base 605, installation base 1 passes through equipment support 2 and connects on camera main part 3, wiping mechanism 6 passes through actuating mechanism 5 and sets up in glass cover 4 below.
In the embodiment, in order to clean up dust in front of a lens, a camera body 3 is fixedly installed at the tail end of an equipment bracket 2, a glass cover 4 is installed on the camera body 3, driving mechanisms 5 are fixedly installed at two sides of the camera body 3, each driving mechanism 5 comprises a servo push rod 501, a fixed base 502, a driving shaft 503, a bearing seat 504 and a servo motor 505, a wiping mechanism 6 is fixedly installed at the tail end of each driving mechanism 5, each wiping mechanism 6 comprises a wiping sponge 601, a dust collection cover 602, a driving motor 603, a positioning clamping sleeve 604 and a positioning base 605, each wiping mechanism 6 is arranged below the glass cover 4 through the corresponding driving mechanism 5, the fixed bases 502 are fixedly installed at two sides of the camera body 3, the servo push rods 501 are fixedly installed on the fixed bases 502, the bearing seats 504 are fixedly installed at the tail ends of the servo push rods 501, the driving shafts 503 are movably installed in the bearing seats 504, and one ends of the driving shafts 503 are connected with the servo motors 505, the servo push rod 501 is arranged at two sides of the camera body 3 through a fixed base 502, a through hole is arranged on the fixed base 502, the servo push rod 501 is arranged on the fixed base 502 through the through hole, a bearing is arranged in the bearing seat 504, the driving shaft 503 is movably arranged on the bearing seat 504 through the bearing, a positioning cutting sleeve 604 is fixedly arranged at the middle position of the driving shaft 503, positioning bases 605 are arranged at two sides of the positioning cutting sleeve 604, a driving motor 603 is fixedly arranged in the positioning cutting sleeve 604, a dust collection cover 602 is fixedly arranged at the output end of the driving motor 603, a wiping sponge 601 is fixedly arranged in the dust collection cover 602, the positioning cutting sleeve 604 is connected on the driving shaft 503 through the positioning base 605, the driving motor 603 is arranged at the middle position of the driving shaft through the positioning cutting sleeve 604, the dust collection cover 602 is movably arranged below the glass cover 4 through the driving motor 603, and the wiping sponge 601 is fixed in the dust collection cover 602 through glue, after the servo push rod 501 is started, the dust collection cover 602 moves upwards, after the dust collection cover 602 moves upwards, the wiping sponge 601 is attached to the glass cover 4, after the wiping sponge 601 is attached to the glass cover 4, the driving motor 603 can be started, and after the driving motor 603 is started, the wiping sponge 601 is attached to the glass cover 4 to rotate, so that dust at a lens is cleaned.
It should be noted that, in actual use, the utility model is a production line remote monitoring device, first the servo push rod 501 is started, after the servo push rod 501 is started, the dust hood 602 moves upward, after the dust hood 602 moves upward, the wiping sponge 601 is attached to the glass cover 4, after the wiping sponge 601 is attached to the glass cover 4, the driving motor 603 can be started, because the output end of the driving motor 603 is fixedly provided with the dust hood 602, the wiping sponge 601 is fixedly arranged in the dust hood 602, the positioning sleeve 604 is connected to the driving shaft 503 through the positioning base 605, the driving motor 603 is arranged in the middle of the driving shaft 503 through the positioning sleeve 604, the dust hood 602 is movably arranged below the glass cover 4 through the driving motor 603, so after the driving motor 603 is started, the wiping sponge 601 will rotate to be attached to the glass cover 4, thereby cleaning up dust at the lens, after the dust is cleaned up, the dust can be released from the dust hood 602 through the servo push rod 501, the servo motor 505 can be started after the dust collection cover 602 is released, and the dust collection cover 602 can be turned over after the servo motor 505 is started, so that dust in the dust collection cover 602 can be poured out.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that changes may be made in the embodiments and/or equivalents thereof without departing from the spirit and scope of the utility model. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims (6)
1. The utility model provides a production line remote monitoring device which characterized in that: including installation base (1), fixed mounting has equipment support (2) on installation base (1), the terminal fixed mounting of equipment support (2) has camera main part (3), install glass cover (4) on camera main part (3), camera main part (3) both sides fixed mounting has actuating mechanism (5), actuating mechanism (5) include servo push rod (501), unable adjustment base (502), drive shaft (503), bearing frame (504) and servo motor (505), actuating mechanism (5) terminal fixed mounting has cleaning mechanism (6), cleaning mechanism (6) including cleaning sponge (601), dust cage (602), driving motor (603), location cutting ferrule (604) and location base (605).
2. The production line remote monitoring device according to claim 1, wherein: unable adjustment base (502) fixed mounting is in camera main part (3) both sides, fixed mounting has servo push rod (501) on unable adjustment base (502), servo push rod (501) end fixed mounting has bearing frame (504), movable mounting has drive shaft (503) in bearing frame (504), the one end of drive shaft (503) is connected with servo motor (505).
3. A production line remote monitoring apparatus according to claim 2, wherein: servo push rod (501) are installed in camera main part (3) both sides through unable adjustment base (502), the through-hole has been seted up on unable adjustment base (502), servo push rod (501) are installed on unable adjustment base (502) through the through-hole, be equipped with the bearing in bearing frame (504), drive shaft (503) are through bearing movable mounting on bearing frame (504).
4. A production line remote monitoring apparatus according to claim 3, wherein: the cleaning device is characterized in that the positioning clamping sleeve (604) is fixedly arranged in the middle of the driving shaft (503), positioning bases (605) are arranged on two sides of the positioning clamping sleeve (604), a driving motor (603) is fixedly arranged in the positioning clamping sleeve (604), a dust collection cover (602) is fixedly arranged at the output end of the driving motor (603), and a cleaning sponge (601) is fixedly arranged in the dust collection cover (602).
5. The production line remote monitoring device according to claim 4, wherein: the cleaning device is characterized in that the positioning clamping sleeve (604) is connected to the driving shaft (503) through the positioning base (605), the driving motor (603) is installed in the middle of the driving shaft (503) through the positioning clamping sleeve (604), the dust collection cover (602) is movably installed below the glass cover (4) through the driving motor (603), and the cleaning sponge (601) is fixed in the dust collection cover (602) through glue.
6. The production line remote monitoring device according to claim 5, wherein: the installation base (1) is connected to the camera main body (3) through the equipment support (2), and the wiping mechanism (6) is arranged below the glass cover (4) through the driving mechanism (5).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202122057037.6U CN215773292U (en) | 2021-08-30 | 2021-08-30 | Remote monitoring device for production line |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202122057037.6U CN215773292U (en) | 2021-08-30 | 2021-08-30 | Remote monitoring device for production line |
Publications (1)
Publication Number | Publication Date |
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CN215773292U true CN215773292U (en) | 2022-02-08 |
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CN202122057037.6U Active CN215773292U (en) | 2021-08-30 | 2021-08-30 | Remote monitoring device for production line |
Country Status (1)
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CN (1) | CN215773292U (en) |
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2021
- 2021-08-30 CN CN202122057037.6U patent/CN215773292U/en active Active
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